Disruption of gap junctions attenuates acute myeloid leukemia chemoresistance induced by bone marrow mesenchymal stromal cells

Archive ouverte

Kouzi, Farah | Zibara, Kazem | Bourgeais, Jerome | Picou, Frederic | Gallay, Nathalie | Brossaud, Julie | Dakik, Hassan | Roux, Benjamin | Hamard, Sophie | Le Nail, Louis-Romée | Hleihel, Rita | Foucault, Amelie | Ravalet, Noemie | Rouleux-Bonnin, Florence | Gouilleux, Fabrice | Mazurier, Frédéric | Béné, Marie, C | Akl, Haidar | Gyan, Emmanuel | Domenech, Jorge | El-Sabban, Marwan | Herault, Olivier

Edité par CCSD ; Nature Publishing Group [1987-....] -

International audience. The bone marrow (BM) niche impacts the progression of acute myeloid leukemia (AML) by favoring the chemoresistance of AML cells. Intimate interactions between leukemic cells and BM mesenchymal stromal cells (BM-MSCs) play key roles in this process. Direct intercellular communications between hematopoietic cells and BM-MSCs involve connexins, components of gap junctions. We postulated that blocking gap junction assembly could modify cell-cell interactions in the leukemic niche and consequently the chemoresistance. The comparison of BM-MSCs from AML patients and healthy donors revealed a specific profile of connexins in BM-MSCs of the leukemic niche and the effects of carbenoxolone (CBX), a gap junction disruptor, were evaluated on AML cells. CBX presents an antileukemic effect without affecting normal BM-CD34 + progenitor cells. The proapoptotic effect of CBX on AML cells is in line with the extinction of energy metabolism. CBX acts synergistically with cytarabine (Ara-C) in vitro and in vivo. Coculture experiments of AML cells with BM-MSCs revealed that CBX neutralizes the protective effect of the niche against the Ara-C-induced apoptosis of leukemic cells. Altogether, these results suggest that CBX could be of therapeutic interest to reduce the chemoresistance favored by the leukemic niche, by targeting gap junctions, without affecting normal hematopoiesis.

Suggestions

Du même auteur

Aberrant DNA methylation impacts HOX genes expression in bone marrow mesenchymal stromal cells of myelodysplastic syndromes and de novo acute myeloid leukemia

Archive ouverte | Roux, Benjamin | CCSD

International audience. DNA methylation, a major biological process regulating the transcription, contributes to the pathophysiology of hematologic malignancies, and hypomethylating agents are commonly used to treat...

Oncogenic STAT5 signaling promotes oxidative stress in chronic myeloid leukemia cells by repressing antioxidant defenses

Archive ouverte | Bourgeais, Jerome | CCSD

International audience. STAT5 transcription factors are frequently activated in hematopoietic neoplasms and are targets of various tyrosine kinase oncogenes. Evidences for a crosstalk between STAT5 and reactive oxyg...

A comparative study of the capacity of mesenchymal stromal cell lines to form spheroids

Archive ouverte | Deynoux, Margaux | CCSD

International audience. Mesenchymal stem cells (MSC)-spheroid models favor maintenance of stemness, ex vivo expansion and transplantation efficacy. Spheroids may also be considered as useful surrogate models of the ...

Chargement des enrichissements...